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NOVEL STEEL AND ARAMID/PHENOL COMPOSITE GEAR FOR A TRANSMISSION WITH OPTIMUM DESIGN AND FEM VIBRATION ANALYSIS
Hyunwoong Kim, Cheol Kim, Sanghyeon Kim, Bongjoon Kim, Chaehong Lim
International Journal of Automotive Technology. 2019;20(4):749-754.     DOI: https://doi.org/10.1007/s12239-019-0070-3

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Novel Steel and Aramid/Phenol Composite Gear for a Transmission with Optimum Design and FEM Vibration Analysis
International Journal of Automotive Technology. 2019;20(4):749-754   Crossref logo
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A preliminary approach to composite beam design using FEM analysis
Composite Structures. 1990;16(1-3):259-275   Crossref logo
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Free vibration analysis of laminated composite plates with elastically restrained edges using FEM
Open Engineering. 2013;3(2):   Crossref logo
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Design of composite laminates for optimum frequency response
Journal of Sound and Vibration. 2012;331(8):1759-1776   Crossref logo
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Nonlinear Dynamic Characteristics of Fixed-Axis Gear Wear in Multistage Gear Transmission Systems
Shock and Vibration. 2019;2019:1-11   Crossref logo
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Nonlinear dynamic response analysis on gear-rotor-bearing transmission system
Journal of Vibration and Control. 2016;24(9):1632-1651   Crossref logo
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Corrigendum: Nonlinear dynamic response analysis on gear-rotor-bearing transmission system
Journal of Vibration and Control. 2018;24(24):5951-5953   Crossref logo
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Large amplitude free vibration analysis of thermally post-buckled composite doubly curved panel using nonlinear FEM
Finite Elements in Analysis and Design. 2011;47(4):378-386   Crossref logo
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Nonlinear thermal free vibration frequency analysis of delaminated shell panel using FEM
Composite Structures. 2019;224:111011   Crossref logo
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Optimum In Situ Strength Design of Composite Laminates. Part II: Optimum Design
Journal of Composite Materials. 1996;30(12):1338-1358   Crossref logo
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